The potential harm of soil cadmium pollution to ecological environment and human health has been increasingly widely concerned. Phytoremediation, as a kind of new and effective technology, has become an important meth...The potential harm of soil cadmium pollution to ecological environment and human health has been increasingly widely concerned. Phytoremediation, as a kind of new and effective technology, has become an important method for cleaning up cadmium in contaminated sites. The amaranth (Amaranthus mangostanus L.) is widely distributed and has abundant varieties in China, its rapid growth and large biomass can be served as candidate for cadmium hyperaccumulators for phytoremediation. To obtain cadmium hyper-accumulator, Cd uptake in 23 amaranth cultivars from different ecological region was investigated under hydroponic culture condition. Meanwhile, pot experiment was established to probe phytoremediation potentiality of Cd contaminated soil by amaranth. Three treatment (Cd 5, 10, and 25 mg kg^-1) were imposed to red soil, yellow brown soil, and vegetable soil. The results showed that under hydroponic culture with Cd 3 mg L^-1, the cadmium concentration in the shoots of the cultivar Tianxingmi reached 260 mg kg^-1, and its total cadmium uptake was the highest among various cultivars. In the treatment Cd 25 mg kg^-1, the cadmium concentration in the shoots of the cultivar Tianxingmi reached 212 mg kg^-1, while bioaccumulation factor and shoot purification rate reached 8.50 and 3.8%, respectively. Further, the total biomass and shoot biomass were not decreased significantly under Cd exposure. These results suggested that cultivar Tianxingmi is a typical Cd hyperaccumulator, and can be expected to be used in phytoremediation of Cd contaminated soil.展开更多
Field investigation and greenhouse experiments were conducted to study the tolerance of Pteris vittata L. (Chinese brake) to cadmium (Cd) and its feasibility for remediating sites co-contaminated with Cd and arsen...Field investigation and greenhouse experiments were conducted to study the tolerance of Pteris vittata L. (Chinese brake) to cadmium (Cd) and its feasibility for remediating sites co-contaminated with Cd and arsenic (As). The results showed that P. vittata could survive in pot soils spiked with 80 mg/kg of Cd and tolerated as great as 301 mg/kg of total Cd and 26.8 mg/kg of diethyltriaminepenta acetic acid (DTPA)-extractable Cd under field conditions. The highest concentration of Cd in fronds was 186 mg/kg under a total soil concentration of 920 mg As/kg and 98.6 mg Cd/kg in the field, whereas just 2.6 mg/kg under greenhouse conditions. Ecotypes of P. vittata were differentiated in tolerance and accumulation of Cd, and some of them could not only tolerate high concentrations of soil Cd, but also accumulated high concentrations of Cd in their fronds. Arsenic uptake and transportation by P. vittata was not inhibited at lower levels (〈20 mg/kg) of Cd addition. Compared to the treatment without addition of Cd, the frond As concentration was increased by 103.8% at 20 mg Cd/kg, with the highest level of 6434 mg/kg. The results suggested that the Cd-tolerant ecotype of P. vittata extracted effectively As and Cd from the site co-contaminated with Cd and As, and might be used to remediate and revegetate this type of site.展开更多
This paper reports upon the finding of Viola baoshanensis, a cadmium (Cd) hyperaccumulator through field survey and greenhouse experiments. Average Cd concentration in the shoots and roots of V. baoshanensis growing o...This paper reports upon the finding of Viola baoshanensis, a cadmium (Cd) hyperaccumulator through field survey and greenhouse experiments. Average Cd concentration in the shoots and roots of V. baoshanensis growing on Baoshan lead/zinc mine in Hunan Province, China, was 1168 and 981 mg/kg, respectively, varying from 456 to 2310mg/kg in the shoots, and from 233 to 1846 mg/kg in the roots.The ratio of Cd concentration in shoot to root (DW) and that in plant shoots to total concentration in surface soil was 1.32 and 2.38, respectively. Under nutrient solution culture, biomass (DW) of V. baoshanensis exposed to 0-30 mg/L Cd insolution increased with Cd supply increasing and reached a maximum at 30 mg/L Cd. Further increase of Cd concentration (40, 50 mg/L) in solution significantly reduced biomass.Cd concentration in the shoots was positively correlated with Cd concentration in the culture medium. Cd concentration in the shoots reached 4825 mg/kg at 50 mg/L Cd solution. Theratio of Cd concentration of shoots to roots in V. baoshanensis was greater than 1 at all Cd treatments, with an average of 1.67 (1.14-2.22). The results indicate that V. baoshanensis is a Cd hyperaccumulator plant.展开更多
籽粒苋是一种生物量大、易栽培的镉(Cd)富集植物,具有作为Cd污染土壤修复植物的潜力.比较了两个基因型籽粒苋(K112和R104)的耐Cd性特征,土壤Cd污染浓度范围是0~50mgkg-1,生长60d收获.结果表明,籽粒苋K112(Amaranthus hypochondriacus L...籽粒苋是一种生物量大、易栽培的镉(Cd)富集植物,具有作为Cd污染土壤修复植物的潜力.比较了两个基因型籽粒苋(K112和R104)的耐Cd性特征,土壤Cd污染浓度范围是0~50mgkg-1,生长60d收获.结果表明,籽粒苋K112(Amaranthus hypochondriacus L. Cv.‘K112’)与R104(A. hypochondriacus L. Cv.‘R104’)生物量随土壤中Cd浓度的增加而逐步下降,在土壤中Cd浓度<16mgkg-1时,其生物量积累没有受到明显的影响.在本试验最高Cd浓度条件(50mgkg-1)下仍可生长,但生物量显著下降.两种籽粒苋叶中Cd含量随土壤中Cd浓度增加而快速上升,在土壤Cd浓度为16mgkg-1时,叶内Cd浓度分别达120.63和109.96mgkg-1(DW),达到超富集植物的临界标准.Cd在植物体内的分布特征为叶>根>茎.籽粒苋两个品种相比,K112吸收Cd的能力大于R104,尤其是在高Cd浓度时,两种籽粒苋对Cd的绝对提取量相似,并随土壤Cd浓度的上升而快速增加.籽粒苋K112和R104对土壤中的Cd具有很强的耐性和积累的能力,可作为Cd污染土壤的修复植物.展开更多
通过水培试验,研究了氮素水平对超积累植物东南景天植株生长和镉吸收积累的影响。结果表明,在一定范围内供氮(4.0-16.0 mm ol/L)能明显促进东南景天的生长,随着氮素水平的升高,地上部和根系的生物量也提高,在供氮水平为16.0 mm ol/L...通过水培试验,研究了氮素水平对超积累植物东南景天植株生长和镉吸收积累的影响。结果表明,在一定范围内供氮(4.0-16.0 mm ol/L)能明显促进东南景天的生长,随着氮素水平的升高,地上部和根系的生物量也提高,在供氮水平为16.0 mm ol/L时达到最大值,而当供氮水平≥32.0 mm ol/L时,东南景天的生长受到严重的抑制,其地上部和根系的生物量开始下降,各项根系形态的指标(包括根系长度、根系表面积、根系直径、根系体积)均有所降低。氮对东南景天体内镉积累有一定的促进作用,随着氮素用量的增加,体内镉含量逐渐升高,与生物量不同,镉含量在氮水平32.0 mm ol/L条件下达到最大。研究结果表明,适当提高营养液氮素水平,有利于东南景天的生长和镉吸收,为进一步利用东南景天修复镉污染土壤,提高修复效率提供科学依据。展开更多
基金supported by the National Key Basic Research (973) Program of China (2002CB410809)
文摘The potential harm of soil cadmium pollution to ecological environment and human health has been increasingly widely concerned. Phytoremediation, as a kind of new and effective technology, has become an important method for cleaning up cadmium in contaminated sites. The amaranth (Amaranthus mangostanus L.) is widely distributed and has abundant varieties in China, its rapid growth and large biomass can be served as candidate for cadmium hyperaccumulators for phytoremediation. To obtain cadmium hyper-accumulator, Cd uptake in 23 amaranth cultivars from different ecological region was investigated under hydroponic culture condition. Meanwhile, pot experiment was established to probe phytoremediation potentiality of Cd contaminated soil by amaranth. Three treatment (Cd 5, 10, and 25 mg kg^-1) were imposed to red soil, yellow brown soil, and vegetable soil. The results showed that under hydroponic culture with Cd 3 mg L^-1, the cadmium concentration in the shoots of the cultivar Tianxingmi reached 260 mg kg^-1, and its total cadmium uptake was the highest among various cultivars. In the treatment Cd 25 mg kg^-1, the cadmium concentration in the shoots of the cultivar Tianxingmi reached 212 mg kg^-1, while bioaccumulation factor and shoot purification rate reached 8.50 and 3.8%, respectively. Further, the total biomass and shoot biomass were not decreased significantly under Cd exposure. These results suggested that cultivar Tianxingmi is a typical Cd hyperaccumulator, and can be expected to be used in phytoremediation of Cd contaminated soil.
基金This work was supported by the National Science Foundation for the Distinguished Young Scholar of China(No.40325003).
文摘Field investigation and greenhouse experiments were conducted to study the tolerance of Pteris vittata L. (Chinese brake) to cadmium (Cd) and its feasibility for remediating sites co-contaminated with Cd and arsenic (As). The results showed that P. vittata could survive in pot soils spiked with 80 mg/kg of Cd and tolerated as great as 301 mg/kg of total Cd and 26.8 mg/kg of diethyltriaminepenta acetic acid (DTPA)-extractable Cd under field conditions. The highest concentration of Cd in fronds was 186 mg/kg under a total soil concentration of 920 mg As/kg and 98.6 mg Cd/kg in the field, whereas just 2.6 mg/kg under greenhouse conditions. Ecotypes of P. vittata were differentiated in tolerance and accumulation of Cd, and some of them could not only tolerate high concentrations of soil Cd, but also accumulated high concentrations of Cd in their fronds. Arsenic uptake and transportation by P. vittata was not inhibited at lower levels (〈20 mg/kg) of Cd addition. Compared to the treatment without addition of Cd, the frond As concentration was increased by 103.8% at 20 mg Cd/kg, with the highest level of 6434 mg/kg. The results suggested that the Cd-tolerant ecotype of P. vittata extracted effectively As and Cd from the site co-contaminated with Cd and As, and might be used to remediate and revegetate this type of site.
文摘This paper reports upon the finding of Viola baoshanensis, a cadmium (Cd) hyperaccumulator through field survey and greenhouse experiments. Average Cd concentration in the shoots and roots of V. baoshanensis growing on Baoshan lead/zinc mine in Hunan Province, China, was 1168 and 981 mg/kg, respectively, varying from 456 to 2310mg/kg in the shoots, and from 233 to 1846 mg/kg in the roots.The ratio of Cd concentration in shoot to root (DW) and that in plant shoots to total concentration in surface soil was 1.32 and 2.38, respectively. Under nutrient solution culture, biomass (DW) of V. baoshanensis exposed to 0-30 mg/L Cd insolution increased with Cd supply increasing and reached a maximum at 30 mg/L Cd. Further increase of Cd concentration (40, 50 mg/L) in solution significantly reduced biomass.Cd concentration in the shoots was positively correlated with Cd concentration in the culture medium. Cd concentration in the shoots reached 4825 mg/kg at 50 mg/L Cd solution. Theratio of Cd concentration of shoots to roots in V. baoshanensis was greater than 1 at all Cd treatments, with an average of 1.67 (1.14-2.22). The results indicate that V. baoshanensis is a Cd hyperaccumulator plant.
文摘籽粒苋是一种生物量大、易栽培的镉(Cd)富集植物,具有作为Cd污染土壤修复植物的潜力.比较了两个基因型籽粒苋(K112和R104)的耐Cd性特征,土壤Cd污染浓度范围是0~50mgkg-1,生长60d收获.结果表明,籽粒苋K112(Amaranthus hypochondriacus L. Cv.‘K112’)与R104(A. hypochondriacus L. Cv.‘R104’)生物量随土壤中Cd浓度的增加而逐步下降,在土壤中Cd浓度<16mgkg-1时,其生物量积累没有受到明显的影响.在本试验最高Cd浓度条件(50mgkg-1)下仍可生长,但生物量显著下降.两种籽粒苋叶中Cd含量随土壤中Cd浓度增加而快速上升,在土壤Cd浓度为16mgkg-1时,叶内Cd浓度分别达120.63和109.96mgkg-1(DW),达到超富集植物的临界标准.Cd在植物体内的分布特征为叶>根>茎.籽粒苋两个品种相比,K112吸收Cd的能力大于R104,尤其是在高Cd浓度时,两种籽粒苋对Cd的绝对提取量相似,并随土壤Cd浓度的上升而快速增加.籽粒苋K112和R104对土壤中的Cd具有很强的耐性和积累的能力,可作为Cd污染土壤的修复植物.
文摘通过水培试验,研究了氮素水平对超积累植物东南景天植株生长和镉吸收积累的影响。结果表明,在一定范围内供氮(4.0-16.0 mm ol/L)能明显促进东南景天的生长,随着氮素水平的升高,地上部和根系的生物量也提高,在供氮水平为16.0 mm ol/L时达到最大值,而当供氮水平≥32.0 mm ol/L时,东南景天的生长受到严重的抑制,其地上部和根系的生物量开始下降,各项根系形态的指标(包括根系长度、根系表面积、根系直径、根系体积)均有所降低。氮对东南景天体内镉积累有一定的促进作用,随着氮素用量的增加,体内镉含量逐渐升高,与生物量不同,镉含量在氮水平32.0 mm ol/L条件下达到最大。研究结果表明,适当提高营养液氮素水平,有利于东南景天的生长和镉吸收,为进一步利用东南景天修复镉污染土壤,提高修复效率提供科学依据。